A Multi-band 5G Antenna for Smart Phones Operating at Sub-6 GHz Frequencies

Prajwal Patnaik, D. Sarkar, C. Saha
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引用次数: 5

Abstract

The design of an 8 element 5G MIMO antenna operating at multi-band and multi-mode Sub-6 GHz frequencies LTE-42/43 and LTE-46 for smart phones is delineated in this article. In order to reserve ample space for the 2G/3G/4G antenna, the antenna elements are positioned alongside the longer edges of the smartphone. The sub-6 GHz antenna comprises of a T-shaped slot fed by a tuning stub and a microstrip feed line via coupling mechanism. A low loss substrate Taconic TLY is utilized in the design. The dimension of the substrate is 150 mm × 75 mm × 0.8 mm. The stacked 10 dB impedance bandwidths are 300 MHz and 800 MHz for low band and high band in Sub-6 GHz with centre frequencies at 3.6 GHz and 5.5 GHz respectively. A maximum gain of 10 dBi is attained in the sub-6 GHz antenna. The inter element isolation for the entire bands are better than 10 dB thus signifying lesser mutual coupling.
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一种工作在sub - 6ghz频率下的智能手机多频段5G天线
本文描述了智能手机多频段多模LTE-42/43和LTE-46频率下8元5G MIMO天线的设计。为了给2G/3G/4G天线预留足够的空间,天线元件被放置在智能手机较长的边缘旁边。sub- 6ghz天线包括由调谐短段馈电的t形槽和通过耦合机构馈电的微带馈线。设计中采用了低损耗的Taconic TLY衬底。基材尺寸为150mm × 75mm × 0.8 mm。在Sub-6 GHz的低频段和高频段,堆叠的10 dB阻抗带宽分别为300 MHz和800 MHz,中心频率分别为3.6 GHz和5.5 GHz。在sub-6 GHz天线中获得的最大增益为10 dBi。整个频段的元件间隔离优于10 dB,因此相互耦合较小。
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A quasi-elliptic Band Pass Filter designed using quadruplet metamaterial resonators for operation in the 3 GHz (5G) Band A Multi-band 5G Antenna for Smart Phones Operating at Sub-6 GHz Frequencies A Novel CR/L-H Transmission Line based Bandpass Filter for sub 6 GHz 5G Four Element MIMO Antenna System Based on SRR Loaded Printed Monopoles for 28/38 GHz 5G Applications APSYM2020 Advisory Committee
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